首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Magnetic and transport properties of nanocomposite Fe/Fe3-delta O4 and Fe3-delta O4 films prepared by plasma-enhanced chemical vapour deposition
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Magnetic and transport properties of nanocomposite Fe/Fe3-delta O4 and Fe3-delta O4 films prepared by plasma-enhanced chemical vapour deposition

机译:等离子体增强化学气相沉积法制备的纳米复合Fe /Fe3-δO4和Fe3-δO4薄膜的磁性和输运性质

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摘要

Reflective, pinhole-free Fe/Fe3O4 and Fe-3-δ O-4/Fe2O3 nanocomposite films were obtained by reacting iron pentacarbonyl, Fe(CO)(5), in an inductively-coupled radio frequency glow discharge reactor. The conductivity of the Fe-x/(Fe3O4)(1-x) (x > 7%) composite films exhibits metallic characteristics and the conductivity decreases as the α-Fe content decreases. The metal-to-insulator transition temperature of the Fe-x/(Fe3O4)(1-x) (x ∼ 0.07)) films shifts to a higher temperature as compared with Fe-3-δ O-4 due to the increased conductivity from α-Fe. The magnetization versus temperature (M-T) curves show the transition temperature ranging from 95 to 136 K, corresponding to the Verwey temperature, which is dependent on the film composition. The Fe3-δ O-4 film exhibits a negative magnetoresi stance of about 4% and 8% at room temperature and 80 K, respectively.
机译:通过在感应耦合的射频辉光放电反应器中使五羰基铁与Fe(CO)(5)反应,获得无针孔的Fe / Fe3O4和Fe-3-δO-4 / Fe2O3纳米复合反射膜。 Fe-x /(Fe3O4)(1-x)(x> 7%)复合膜的电导率表现出金属特性,并且随着α-Fe含量的减少而降低。与Fe-3-δO-4相比,Fe-x /(Fe3O4)(1-x)(x∼ 0.07))膜的金属-绝缘体转变温度转变为更高的温度α-Fe的电导率。磁化强度与温度(M-T)曲线显示的转变温度范围为95至136 K,对应于Verwey温度,该温度取决于薄膜的成分。 Fe3-δO-4膜在室温和80 K下分别表现出约4%和8%的负磁阻。

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